35.5
无性繁殖使植物无需开花,不吸引传粉媒介或散播种子即可繁殖。 后代在遗传上与亲本相同,并且在没有雄配子和雌配子融合的情况下产生。
营养繁殖是无性繁殖的一种常见类型,其中来自单个植物的分离的碎片(例如茎、根或叶)会发育成完整的生物。 蒲公英属的蒲公英使用一种称为无性繁殖的方法,该方法产生的种子无需授粉或…
与大多数动物不同 植物能够无性生殖
产生的后代的基因
与亲本植物完全相同
植物中的无性生殖又叫做
营养繁殖 无需
雌雄配子融合或减数分裂
植物的无性繁殖可通过植物进化出的
自然机制实现 也可通过培育者开发的
人工方法来实现
分株繁殖是无性繁殖的一种形式
只需分出一部分根或一段茎就能长成
一株全新的植物
例如 用土豆的芽就能重新种出
一棵全新植株
蒲公英则采用另一种无性生殖方法
它们产生的种子无需授粉或受精
该过程叫做无融合生殖
无融合生殖让某些杂种植株
得以克服不育性 将完整的基因组
传给后代
培育人员也有很多人工的
无性生殖方式 比如嫁接、插枝、压条
以及微体繁殖
这些方法有时被培育人员用来
培育新的植物品种
嫁接是种葡萄的一种
常用技术 能结合不同品种的
的优良性状
一棵植株的上半部(含所需性状)
与另一棵的下半部相结合
形成嫁接体
嫁接体的上半部叫做接穗
下半部叫做砧木
例如 结大果的接穗可以
接到抗病的砧木上
产生能结大果的抗病后代
在不利于有性生殖的条件下
无性生殖使得物种
得以生存和繁殖
无性生殖对于已经很好地
适应了环境的植物来说
尤其有利 因为基因相同的后代
能较好地建立起繁盛的群体
然而无性生殖有时也不可取
因为会严重限制植物适应
不断变化的环境条件的能力
因为无法出现遗传变异 后代
面对威胁与疾病 与亲本植物
同样脆弱
遗传单一性甚至能让无性生殖的植物
面临灭绝的风险
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Q1: How does asexual reproduction differ from sexual reproduction in plants?
Asexual reproduction, or vegetative reproduction, produces offspring genetically identical to the parent without fusion of sex gametes or meiosis. Unlike sexual reproduction, it requires no pollination, fertilization, or seed dispersal. Plants can reproduce asexually through natural mechanisms like vegetative propagation or artificial methods developed by breeders.
Q2: What is vegetative propagation and how does it work?
Vegetative propagation is asexual reproduction where detached root or stem fragments develop into complete new plants. For example, a potato eye or bud can be planted to regenerate an entire plant. This method allows plants to reproduce without producing flowers or seeds, making it efficient for establishing genetically identical colonies.
Q3: What is apomixis and why is it important for hybrid plants?
Apomixis is a form of asexual reproduction where plants produce seeds without pollination or fertilization. Dandelions use this method to reproduce. Apomixis allows certain hybrid plants to overcome sterility and pass their intact genome to offspring, enabling reproduction despite genetic incompatibility.
Q4: How does grafting combine desirable traits from different plants?
Grafting combines the upper portion (scion) of one plant with the lower portion (rootstock) of another. The vascular systems fuse over time, allowing the scion to grow and produce flowers and fruit. For example, a scion with large fruit can be grafted onto disease-resistant rootstock, producing disease-resistant progeny with large fruit.
Q5: What are the main artificial methods breeders use for asexual reproduction?
Plant breeders employ cutting, grafting, layering, and micropropagation. Cutting involves placing stem segments with nodes into moist soil to root. Layering bends a young stem and covers it with soil until roots form. Micropropagation uses plant tissue culture and genetic modifications to quickly produce multiple plants from a single parent.
Q6: Why is genetic uniformity a disadvantage of asexual reproduction?
Asexual reproduction produces genetically identical offspring, limiting genetic variability. Without genetic diversity, plants cannot adapt to changing environmental conditions and remain equally vulnerable to threats and diseases as the parent. This genetic uniformity can severely increase extinction risk for asexually-reproducing species.
Q7: When is asexual reproduction advantageous for plants?
Asexual reproduction is advantageous when sexual reproduction conditions are unfavorable, allowing species to survive and propagate. It benefits plants well-adapted to their environments, as genetically identical offspring help establish flourishing colonies. This method is also useful for propagating rare or endangered species difficult to grow naturally.