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Drought-induced trans-generational tradeoff between stress tolerance and defence: consequences for range limits?

机译:干旱引起的耐压和防御之间的权衡:范围限制的后果?

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Areas just across species range boundaries are often stressful, but even with ample genetic variation within and among range-margin populations, adaptation towards stress tolerance across range boundaries often does not occur. Adaptive trans-generational plasticity should allow organisms to circumvent these problems for temporary range expansion; however, range boundaries often persist. To investigate this dilemma, we drought stressed a parent generation of Boechera stricta (A.Gray) A. L?ve & D. L?ve, a perennial wild relative of Arabidopsis, representing genetic variation within and among several low-elevation range margin populations. Boechera stricta is restricted to higher, moister elevations in temperate regions where generalist herbivores are often less common. Previous reports indicate a negative genetic correlation (genetic tradeoff) between chemical defence allocation and abiotic stress tolerance that may prevent the simultaneous evolution of defence and drought tolerance that would be needed for range expansion. In growth chamber experiments, the genetic tradeoff became undetectable among offspring sib-families whose parents had been drought treated, suggesting that the stress-induced trans-generational plasticity may circumvent the genetic tradeoff and thus enable range expansion. However, the trans-generational effects also included a conflict between plastic responses (environmental tradeoff); offspring whose parents were drought treated were more drought tolerant, but had lower levels of glucosinolate toxins that function in defence against generalist herbivores. We suggest that either the genetic or environmental tradeoff between defence allocation and stress tolerance has the potential to contribute to range limit development in upland mustards.
机译:跨物种范围边界的区域通常压力很大,但即使在范围边缘种群内部和之间存在足够的遗传变异,也常常不会适应范围边界的胁迫耐受性。适应性的跨世代可塑性应允许生物体为暂时扩大范围而规避这些问题;但是,范围边界通常仍然存在。为了研究这一难题,我们干旱胁迫了拟南芥(Boechera stricta(A.Gray)A. L?ve&D. L?ve)的父本,它们是拟南芥的多年生野生近缘种,代表了几个低海拔范围边缘内和之间的遗传变异。人口。在温带草食动物通常较不常见的温带地区,严格沙棘(Boechera stricta)仅限于较高的湿润海拔。先前的报道表明化学防御分配与非生物胁迫耐受性之间存在负的遗传相关性(遗传折衷),这可能阻止防御能力和干旱耐受性同时发展,而这是范围扩大所必需的。在生长室实验中,在父母经过干旱处理的后代同胞家庭中,遗传权衡变得不可检测,这表明应激诱导的跨代可塑性可能会绕过遗传权衡,从而使范围扩大。但是,跨代影响还包括可塑性响应之间的冲突(环境权衡);父母经过干旱处理的后代对干旱的耐受性更高,但芥子油苷的毒素含量较低,可起到防御普通食草动物的作用。我们建议,防御分配与胁迫耐受性之间的遗传或环境权衡都有可能有助于陆地芥菜的射程限制发展。

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